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Effect of nonequilibrium charge screening in A + B → 0 bimolecular reactions in condensed matter

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Abstract

The formalism of many-particle densities developed earlier by the present authors is applied to the study of the cooperative effects in the kinetics of bimolecular A + B → 0 reactions between oppositely charged particles (reactants). It is shown that unlike the Debye-Hückel theory in statistical physics, here charge screening has essentially a nonequilibrium character. For the asymmetric mobility of reactants (DA = 0, DB≠ 0 the joint spatial distribution of similar immobile reactants A reveals at short distances a singular character associated with their aggregation. The relevant reaction rate does not approach a steady state (as it does in the symmetric case, DA =DB, but increases infinitely in time, thus leading to a concentration decay which is quicker than the algebraic law generally accepted in chemical kinetics, n ∝t-1.

Original languageEnglish
Pages (from-to)127-144
Number of pages18
JournalJournal of Statistical Physics
Volume72
Issue number1-2
DOIs
Publication statusPublished - Jul 1993

Keywords

  • charge screening
  • Coulomb interaction
  • Diffusion-limited reactions
  • many-particle effects
  • self-organization
  • spatial correlations

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